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N-Benzylhydroxylamine hydrochloride CAS:29601-98-7
ZhonghanProduct Overview
As an important organic compound, N-benzylhydroxylamine hydrochloride has shown key value in many fields such as organic synthesis, pharmaceutical research and development, and materials science. Its unique structure and properties make it an indispensable component in many chemical processes.
ZhonghanStructural formula
Molecular formula |
C7H10ClNO |
Molecular weight |
159.61 |
Storage conditions |
Inert atmosphere, Room Temperature |
Melting point |
108-110 °C (lit.) |
Solubility |
Soluble in DMSO (slightly), ethyl acetate (slightly, heated), methanol (slightly) |
Form |
Powder crystal |
Color |
White to light yellow to light orange |
ZhonghanPhysical properties
1. Appearance: It usually appears as white to off-white crystalline powder with fine texture and uniform color. This appearance characteristic enables preliminary judgment through simple visual observation during the initial quality inspection and identification of the product.
2. Melting point: [The specific melting point value needs to be determined through precise experiments. Melting point data is an important basis for identifying product purity and plays a key role in synthesis, purification and quality control.] A stable melting point range helps ensure the consistency of product quality.
3. Solubility: It has good hydrophilicity, is easily soluble in water, and can quickly form a uniform solution. At the same time, it also shows good solubility in polar organic solvents such as methanol, ethanol, and acetonitrile. This characteristic enables it to flexibly participate in various organic reaction systems and adapt to different reaction conditions, providing favorable conditions for the smooth progress of chemical reactions.
4. Stability: In a room temperature, dry, light-proof environment, the chemical properties are relatively stable, which is convenient for storage and transportation. However, in high temperature, high humidity, or when in contact with strong oxidants, strong alkalis and other substances, chemical reactions may occur, resulting in structural changes and property changes. Therefore, during storage and use, environmental factors need to be strictly controlled to avoid mixing with incompatible substances.
ZhonghanApplication Areas
1. Pharmaceutical field: As an important pharmaceutical intermediate, it plays a key role in drug research and development. The benzyl and hydroxylamine groups in its molecular structure provide abundant reaction sites for the construction of biologically active drug molecules. By reacting with other groups with specific pharmacological activities, a variety of drugs with antibacterial, antiviral, antitumor and other activities can be synthesized. For example, in the development of antibacterial drugs, N-benzylhydroxylamine hydrochloride can be used for condensation reaction with other compounds containing active groups to synthesize new antibacterial drugs with high inhibitory activity against specific pathogens, providing new ideas and methods for solving clinical drug resistance problems; in the research of antitumor drugs, it can be used as a key structural unit to participate in the construction of drug molecules with targeted anticancer activity, providing new drug options for the treatment of cancer.
2. Organic synthesis: In organic synthetic chemistry, N-benzylhydroxylamine hydrochloride is an important raw material for the synthesis of various complex organic compounds. It can participate in a variety of organic chemical reactions such as nucleophilic substitution reactions, condensation reactions, and cyclization reactions, and provide key structural fragments for the synthesis of organic materials, functional dyes, organic catalysts, etc. with special structures and functions. For example, when synthesizing organic materials with fluorescent properties, N-benzylhydroxylamine hydrochloride is reacted with other compounds containing conjugated structures to prepare new materials with unique fluorescent emission characteristics, which are used in fluorescent sensors, bioimaging and other fields; in the synthesis of organic catalysts, its structural characteristics can be used to construct new catalysts with high catalytic activity to promote various organic chemical reactions.
3. Materials Science: In the research of materials science, N-benzylhydroxylamine hydrochloride also shows potential application value. It can be used as a functional additive or monomer to participate in the synthesis of polymer materials, giving the materials special properties. For example, when preparing polymer materials with antioxidant properties, introducing N-benzylhydroxylamine hydrochloride into the polymer structure can utilize its antioxidant properties to improve the service life and stability of the material; when synthesizing materials with special surface properties, it can be used as a surface modifier to improve the surface wettability, adhesion and other properties of the material, and expand the application range of the material.